Please use this identifier to cite or link to this item: http://hdl.handle.net/2122/4605
DC FieldValueLanguage
dc.contributor.authorallTassi, F.; Dept. of Earth Sciences, Univ. of Florence, Via G. La Pira, 4, 50121 Florence, Italyen
dc.contributor.authorallCapaccioni, B.; Dept. of Earth and Geological-Environmental Sciences, Univ. of Bologna, P.zza di Porta S. Donato, 40127 Bologna, Italyen
dc.contributor.authorallCaramanna, G.; Department of Earth Sciences, University of Rome 'La Sapienza', P.le Aldo Moro,5 - 00185 Rome, Italyen
dc.contributor.authorallCinti, D.; Istituto Nazionale di Geofisica e Vulcanologia, Sezione Roma1, Roma, Italiaen
dc.contributor.authorallMontegrossi, G.; CNR-Institute of Geosciences and Earth Resources, Via G. La Pira, 4, 50121 Florence, Italyen
dc.contributor.authorallPizzino, L.; Istituto Nazionale di Geofisica e Vulcanologia, Sezione Roma1, Roma, Italiaen
dc.contributor.authorallQuattrocchi, F.; Istituto Nazionale di Geofisica e Vulcanologia, Sezione Roma1, Roma, Italiaen
dc.contributor.authorallVaselli, O.; Dept. of Earth Sciences, Univ. of Florence, Via G. La Pira, 4, 50121 Florence, Italyen
dc.date.accessioned2008-12-11T14:09:36Zen
dc.date.available2008-12-11T14:09:36Zen
dc.date.issued2009-
dc.identifier.urihttp://hdl.handle.net/2122/4605en
dc.description.abstractA geochemical survey of thermal waters collected from submarine vents at Panarea Island (Aeolian Islands, southern Italy) was carried out from December 2002 to March 2007, in order to investigate i) the geochemical processes controlling the chemical composition of the hydrothermal fluids and ii) the possible relations between the chemical features of the hydrothermal reservoir and the activity of the magmatic system. Compositional data of the thermal water samples were integrated in a hydrological conceptual model, which describes the formation of the vent fluid by mixing of seawater, seawater concentrated by boiling, and a deep, highly-saline end-member, whose composition is regulated by water-rock interactions at relatively high temperature and shows clear clues of magmatic-related inputs. The chemical composition of concentrated seawater was assumed to be represented by that of the water sample having the highest Mg content. The composition of the deep end-member was instead calculated by extrapolation assuming a zero-Mg end-member. The Na–K–Ca geothermometer, when applied to the thermal end-member composition, indicated an equilibrium temperature of approximately 300 °C, a temperature in agreement with the results obtained by gas-geothermometry.en
dc.language.isoEnglishen_US
dc.publisher.nameElsevieren_US
dc.relation.ispartofApplied Geochemistryen_US
dc.relation.ispartofseries2/24 (2009)en_US
dc.subjectlow-pH waters; shallow submarine hydrothermal springs; Panarea Islanden
dc.titleLow-pH waters discharging from submarine vents at Panarea Island (Aeolian Islands, southern Italy) after the 2002 gas blast: origin of hydrothermal fluids and implications for volcanic surveillanceen_US
dc.typearticleen
dc.description.statusPublisheden_US
dc.type.QualityControlPeer-revieweden_US
dc.description.pagenumber246-254en_US
dc.subject.INGV04. Solid Earth::04.04. Geology::04.04.12. Fluid Geochemistryen
dc.identifier.doi10.1016/j.apgeochem.2008.11.015en_US
dc.relation.referencesAnzidei, M., Esposito, A., Bortolozzi, G., De Giosa, F., 2005. The high resolution bathymetric map of the exhalative area of Panarea, Aeolian Islands, Italy. Ann. Geophys. 48, 17-39. Barragán, R.M., Birkle, P., Portugal, E., Arellano, V.M., Alvarez, J., 2001. Geochemical survey of medium temperature geothermal resources from the Baja California Peninsula and Sonora, Mexico. J. Volcanol. Geoth. Res., 110, 101-119. Beccaluva, L., Rossi, P.L., Serri, G., 1982. Neogene and recent volcanism of the southern Tyrrhenian-Sicilian area: implications for the geodynamic evolution of the Calabrian arc. Earth Evol. Sci., 3, 222-238. Beccaluva, L., Gabbianelli, G., Lucchini, F., Rossi, P.L., Savelli, C., 1985. Petrology and K/Ar ages of volcanoes dredged from the Eolian seamounths: implications for geodynamic evolution of the southern Tyrrhenian basin. Earth Planet. Sci. Lett., 74, 187-208. Bencini, A., 1985. Applicabilità del metodo dell’Azometina-H alla determinazione del Boro nelle acque naturali. Rend. Soc. It. Min. Petrol. 40, 311-316. Bischoff, L.B., Seyfried, W.E., 1978. Hydrothermal chemistry of seawater from 25 °C to 350 °C. Am. J. Sci., 278, 838-860. Boccaletti, M., Manetti, P., 1978. The Tyrrhenian sea and adjoining areas. In: The ocean basins and margins, A.E.M. Nairn et al. (Eds.), Plenuum Press, New York, 4b, 149-151. Botz, R., Stüben, D., Winekler, G., Bayer, R., Schmitt, M., Faber, E., 1996. Hydrothermal gases from offshore Milos Island, Greece. Chem. Geol., 130, 161-173. Butterfield, A., Massoth, G.J., McDuff, R.E., Lupton, J.E., Lilley, M.D., 1990. Geochemistry of hydrothermal fluids from Axial Seamount hydrothermal emissions study vent field, Juan de Fuca Ridge: subseafloor boiling and subsequent fluid-rock interaction. J. Geophys. Res., 95, 12895-12921. Calanchi, N., Capaccioni, B., Martini, M., Tassi, F., Valentini, L., 1995. Submarine gas emissions from Panarea, Aeolian archipelago: distribution of inorganic and organic compounds and inference about source conditions. Acta Vulcanol., 7, 43-48. Calanchi, N., Tranne, C.A., Lucchini, F., Rossi, P.L., 1999. Geological map of the Island of Panarea and Basiluzzo, Aeolian island, 1:10000 scale, G.N.V, Siena. Calanchi, N., Peccerillo, A., Tranne, C.A., Lucchini, F., Rossi, P.L., Kempton, M., Barbieri, M., Wu, T.W., 2002. Petrology and geochemistry of volcanic rocks from the island of Panarea: implications for mantle evolution beneath the Aeolian island arc, Southern Tyrrhenian Sea. J. Volcanol. Geoth. Res., 115, 367-395. Caliro, S., Caracausi, A., Chiodini, G., Ditta, M., Italiano, F., Longo, M., Minopoli, C., Nuccio, P.M., Paonita, A., Rizzo, A., 2004. Evidence of a new magmatic input to the quiescent volcanic edifice of Panarea, Aeolian Islands, Italy. Geophys. Res. Lett., 31, L07619. doi:10.1029/2003GL019359. Capaccioni, B., Tassi, F., Vaselli, D., Tedesco, D., Rossi, P.M.L., 2005. The November 2002 degassing event at Panarea Island, Italy: the results of a 5 months geochemical monitoring program. Ann. Geophys., 48, 755-765. Capaccioni, B., Tassi, F., Vaselli, O., Tedesco, D., Poreda, R., 2007. Submarine gas burst at Panarea Island, southern Italy, on November 3, 2002: a magmatic versus hydrothermal episode. J. Geophys. Res., 112, B05201, doi:10.1029/2006JB004359. Caracausi, A., Ditta, M., Italiano, F., Longo, M., Nuccio, P.M., Paonita, A., Rizzo, A., 2005. Changes in fluid geochemistry and physico-chemical conditions of geothermal systems caused by magmatic input: the recent abrupt outgassing off the island of Panarea, Aeolian Islands, Italy. Geochim. Cosmochim. Acta, 69, 3045-3059. Caramanna, G., Bortoluzzi, G., Cardellini, F., Cinti, Daniele, Galli, G., Pizzino, L., Quattrocchi, F., Voltattorni, N., 2004. Geochemical and geomorphological study of some submarine volcanic gas vents around the island of Panarea, Aeolian Islands, southern Tyrrhenian Sea, Italy. 32nd Internat. Geol. Congress, 20-28 August, Florence, Italy. Caramanna, G., Voltattorni, N., Caramanna, L., Cinti, D., Galli, G., Pizzino, L., Quattrocchi, F., 2006. Scientific diving techniques applied to the geomorphological and geochemical study of some submarine volcanic gas vents, Aeolian Islands, Southern Tyrrhenian Sea, Italy. American Academy of Underwater Science 24th Annual Diving for Science Symposium, U. Conn. Sea Grant, CTSG-06-03, pp. 245. Chiodini, G., Avino, R., Caliro, S., Granieri, D., Monopoli, C., Moretti, R., Perrotta, L., Russo, M., 2003. Relazione sulle emissioni gassose antistanti l’isola di Panarea, Novembre-Dicembre 2002. Istituto Nazionale Geofisica e Vulcanologia report. Available at http://www.ov.ingv.it/ (in Italian). Cronan, D.S., Varnavas, S.P., 1993. Submarine fumarolic and hydrothermal activity off Milos, Hellenic Volcanic Arc. Terra Abstracts, 5, 569. Dando, P.R., Hughes, J.A., Thiermann, F., 1995. Preliminary observations on biological communities at shallow hydrothermal vents in the Aegean Sea. In: Hydrothermal Vents and Processes, Parson, P.R., et al. (Eds.), Geol. Soc. Spec. Publ., 87, 303– 317. Dando, P.R., Stüben, D., Varnavas, S.P., 1999. Hydrothermalism in the Mediterranean, Sea. Progress in Oceanography, 44, 333-367. D’Austria, L.S., 1895. Doe Liparischen Inseln vierter Helft: Panaris. Paino, P. (Ed.), Lipari, Italy. De Astis, G., Ventura, G., Vilardo, G., 2003. Geodynamic significance of the Eolian volcanism, Southern Tyrrhenian sea, Italy, in light of structural, seismological and geochemical data. Tectonics, 22, 1040, doi:10.1029/2003TC001506. De Dolomieu, D., 1783. Voyage aux iles de Lipari. Fait en 1782. Registres de l’Academie des Sciences. Voyages aux îles de Lipari fait en 1781, ou notice sur les Iles Aeoliennes pour servir à l'histoire des volcans. Serpente, Paris, pp. 208. De Lange, G.J., Middelburg, J.J., Van Der Weijden, C.H., Catalano, G., Luther, G.W., Hydes, D.J., Woittez, J.R.W., Klinkhammer, G., 1990. Composition of anoxic hypersaline brines in the Tyro and Bannock basins, Eastern Mediterranean. Mar. Chem., 31, 63-88. Dumas, A., 1860. Dove il vento suona. Viaggio nelle isole Eolie. Pungitopo (Eds.), Marina di Patti (Messina), Italy. Edmond, J.M., Measures, C., McDuff, R., Chan, L.H., Collier, R., Grant, B., Gordon, L.I., Corliss, J.B., 1979. Ridge crest hydrothermal activity and the balances of the major and minor elements in the ocean: the Galapagos data. Earth Planet. Sci. Lett., 46, 1-18. Ellis, A.J., Mahon, W.A.J., 1977. Chemistry and geothermal systems. Academic Press, New York, pp. 392. Esposito, A., Giordano, G., Anzidei, M., 2006. The 2002–2003 submarine gas eruption at Panarea volcano, Aeolian Islands, Italy: Volcanology of the seafloor and implications for the hazard scenario. Mar. Geol., 227, 119-134. Fitzsimons, M.F., Dando, P.R., Hughes, J.A., Thiermann, F., Akoumianaki, I., Pratt, S.M., 1997. Submarine hydrothermal brine seeps of Milos, Greece: observations and geochemistry. Mar. Chem. 57, 325-340. Fouillac, C., Michard, G., 1981. Sodium/lithium ratio in water applied to the geothermometry of geothermal waters. Geothermics, 10, 55-70. Fournier, R.O., 1991. Water geothermometers applied to geothermal energy. In: Application of Geochemistry in Geothermal Reservoir Development, D’Amore F. (Ed.), UNITAR, New York, 37-69. Gabbianelli, G., Gillot, P.V., Lanzafame, G., Romagnoli, C., Rossi, P.L., 1990. Tectonic and volcanic evolution of Panarea, Aeolian islands, Italy. Mar. Geol., 92, 313-326. Gabbianelli, G., Romagnoli, C., Rossi, P.L., Calanchi, N., 1993. Marine geology of the Panarea-Stromboli area. Eolian Archipelago, Southeastern, Tyrrhenian sea. Acta Vulcanol., 3, 11-20. Gamberi, F., Marani, P.M., Savelli, C., 1997. Tectonic, volcanic and hydrothermal features of submarine portion of Eolian Arc (Tyrrhenian sea). Mar. Geology, 140, 167-181. Gasparini, P., Iannaccone, G., Scandone, P., Scarpa, R., 1982. The seismotectonics of the Calabrian Arc. Tectonophysics, 84, 267-286. Giggenbach, W.F., 1975. A simple method for the collection and analysis of volcanic gas samples. Bull. Volcanol., 39, 132-145. Giggenbach, W.F., 1980. Geothermal gas equilibria. Geochim. Cosmochim. Acta, 44, 2021-2032. Giggenbach, W.K., 1987. Redox processes governing the chemistry of fumarolic gas discharges from White Island, New Zealand. Appl. Geochem., 2, 143-161. Giggenbach, W.F., 1988. Geothermal solute equilibria. Derivation of Na–K–Mg–Ca geoindicators. Geochim. Cosmochim. Acta, 52, 2749–2765. Giggenbach, W.F., 1991. Chemical techniques in geothermal exploration. In: Application of Geochemistry in Geothermal Reservoir Development, D’Amore F. (Ed.), UNITAR, New York, 253-273. Hoaki, T., Nishijima, M., Miyashita, H., Maruyama, T., 1995. Dense community of hyperthermophilic sulfur-dependent heterotrophs in a geothermally heated shallow submarine biotope near Kodakara-Jima Island Kagoshima, Japan. Appl. Environ. Microbial. 61, 1931-1937. Italiano, F., Nuccio, P.M., 1991. Geochemical investigations of submarine volcanic exhalations to the east of Panarea, Aeolian Islands, Italy. J. Volcanol. Geoth. Res., 46, 125-141. Kharaka, Y.K., Mariner, R.H., 1989. Chemical geothermometers and their application to formation waters from sedimentary basins. In: Thermal History of Sedimentary Basins: Methods and Case Histories, Naeser, N.D., McCulloch, T.H. (Eds.), Springer-Verlag, New York, USA, pp. 99– 117. Lanzafame, G, Rossi, P.L., 1984. Evidenze di attività tettonica recente a Panarea, Eolie: implicazioni vulcanologiche. Geol. Rom., 23, 131-139. Li, D., Duan, Z., 2007. The speciation equilibrium coupling with phase equilibrium in the H2O-CO2-NaCl system from 0 to 250 °C, from 0 to 1000 bars, and from 0 to 5 molality of NaCl. Chem Geol., 244, 730-751. Martini, M., 1996. Chemical characters of the gaseous phase in different stages of volcanism: precursors and volcanic activity. In: Monitoring and mitigation of volcano hazards, Scarpa, G., Tilling F. (Eds.), Springer, Berlin Heidelberg New York, 199-219. Mercalli, G., 1883. Vulcani e fenomeni Vulcanici. In: Negri, G., Stoppani, A., Percalli, G. (Eds.), Geologia d’Italia 3rd part. Milano, pp. 374. Neri, M., Acocella, V., Behnecke, B., Maiolino, V., Ursino, A., Velardita, R., 2005. Contrasting triggering mechanisms of the 2001 and 2002-2003 eruptions of Mount Etna, Italy. J. Volcanol. Geotherm. Res., 144, 235-255, doi: 10,1016/J.jvolgeores.2004.11.0125. Parkhurst, D. L., Appelo, C. A. J., 1999. User's guide to Phreeqc (Version 2) - a computer program for speciation, batch reaction, one-dimensional transport, and inverse geochemical calculations. Water-resources Investigation Report/ 95-4259, U.S. Geological Survey. Pichler, T., Dix, G.R., 1996. Hydrothermal venting within a coral reef ecosystem, Ambitle Island, Papua New Guinea. Geology 24, 435-438. Pichler, T., Giggenbach, W.F., McInnes, B.I.A., Buhl, D., Duck, B., 1999. Fe-sulfide formation due to seawater–gas–sediment interaction in a shallow-water hydrothermal system at Lihir Island, Papua New Guinea. Econ. Geol., 94, 281-288. Prol-Ledesma, R.M., Canet, C., Melgarejo, J.C., Tolson, G., Rubio- Ramos, M.A., Cruz-Ocampo, J.C., Ortega-Osorio, A., Torres-Vera, M.A., Reyes, A., 2002. Cinnabar deposition in submarine coastal hydrothermal vents, Pacific margin of central Mexico. Econ. Geol., 97, 1331-1340. Prol-Ledesma, R.M., Canet, C., Torres-Vera, M.A., Forrest, M.J., Armienta, M.A., 2004. Vent fluid chemistry in Baia Concepcion coastal submarine hydrothermal system, Baja California Sur, Mexico. J. Volcanol. Geoth. Res., 137, 311-328. Scott, S.D., 1997. Submarine hydrothermal systems and deposits. In: Barnes, H.L. (Ed.), Geochemistry of Hydrothermal Ore Deposits, Wiley, New York, pp. 797-935. Sedwick, P., Stüben, D., 1996. Chemistry of shallow submarine warm springs in an arc-volcanic setting: Vulcano Island. Aeolian Archipelago, Italy. Mar. Chem., 53, 147-161. Seyfried, Jr., W.E., Mottl, M.J., 1982. Hydrothermal alteration of basalt by seawater under seawater-dominated conditions. Geochim. Cosmochim. Acta, 46, 985-1002. Stein, J.L., 1984. Subtidal gastropods consume sulfur-oxidizing bacteria: evidence from coastal hydrothermal vents. Science, 223, 696-698. Taran, Y.A., Gavrilenko, G.M., Chertkova, V., Grichuk, D.V., 1993. A geochemical model for a geothermal system at Ushishir volcano, Kuril Islands. Volc. Seis., 15, 63-79. Taran, Y.A., Inguaggiato, S., Marin, M., Yurova, L.M., 2002. Geochemistry of fluids from submarine hot springs at Punta de Mita, Nayarit, Mexico. J. Volcanol. Geoth. Res., 115, 329-338. Thompson, G., 1983. Hydrothermal fluxes in the ocean. Chem. Ocean., 8, 271-336. Thornton, E.C., Seyfried Jr., W.E., 1987. Reactivity of organic-rich sediment in seawater at 350 °C, 500 bars: experimental and theoretical constraints and implications for the Guaymas Basin hydrothermal system. Geochim. Cosmochim. Acta, 51, 1997-2010. Vidal, V.M.V., Vidal, F.V., Isaacs, J.D., 1978. Coastal submarine hydrothermal activity off northern Baja California. J. Geophys. Res., 83-B, 1757-1774. Voltattorni, N., Caramanna, G., Cinti, D., Galli, G., Pizzino, L., Quattrocchi, F, 2006. Study of natural CO2 emissions in different Italian geological scenarios. Advances in the geological storage of carbon dioxide. NATO Science Series, Springer, pp. 175-190. Von Damm, K.L., 1990. Seafloor hydrothermal activity: Black smoker chemistry and chimneys. Annu. Rev. Earth Planet. Sci., 18, 173-204. Von Damm, K.L., Edmond, J.M., Grant, B., Measures, C.I., Walden, B., Weiss, R.F., 1985. Chemistry of submarine hydrothermal solutions at 21 °N, East Pacific Rise. Geochim. Cosmochim. Acta, 49, 2197-2220. Von Damm, K.L., Lilley, M.D., Shanks, W.C., Brockington, M., Bray, A.M., O’Grady, K.M., Olson, E., Graham, A, Proskurowki, G, SouEPR Science Party, 2003. Extraordinary phase separation and segregation in vent fluids from the southern East Pacific Rise. Earth Planet. Sci. Lett., 206, 365-378en
dc.description.obiettivoSpecifico3V. Proprietà chimico-fisiche dei magmi e dei prodotti vulcanicien_US
dc.description.journalTypeJCR Journalen_US
dc.description.fulltextreserveden
dc.contributor.authorTassi, F.-
dc.contributor.authorCapaccioni, B.-
dc.contributor.authorCaramanna, G.-
dc.contributor.authorCinti, D.-
dc.contributor.authorMontegrossi, G.-
dc.contributor.authorPizzino, L.-
dc.contributor.authorQuattrocchi, F.-
dc.contributor.authorVaselli, O.-
dc.contributor.departmentDept. of Earth Sciences, Univ. of Florence, Via G. La Pira, 4, 50121 Florence, Italyen_US
dc.contributor.departmentDept. of Earth and Geological-Environmental Sciences, Univ. of Bologna, P.zza di Porta S. Donato, 40127 Bologna, Italyen_US
dc.contributor.departmentDepartment of Earth Sciences, University of Rome 'La Sapienza', P.le Aldo Moro,5 - 00185 Rome, Italyen_US
dc.contributor.departmentIstituto Nazionale di Geofisica e Vulcanologia, Sezione Roma1, Roma, Italiaen_US
dc.contributor.departmentCNR-Institute of Geosciences and Earth Resources, Via G. La Pira, 4, 50121 Florence, Italyen_US
dc.contributor.departmentIstituto Nazionale di Geofisica e Vulcanologia, Sezione Roma1, Roma, Italiaen_US
dc.contributor.departmentIstituto Nazionale di Geofisica e Vulcanologia, Sezione Roma1, Roma, Italiaen_US
dc.contributor.departmentDept. of Earth Sciences, Univ. of Florence, Via G. La Pira, 4, 50121 Florence, Italyen_US
item.openairetypearticle-
item.cerifentitytypePublications-
item.languageiso639-1en-
item.grantfulltextrestricted-
item.openairecristypehttp://purl.org/coar/resource_type/c_18cf-
item.fulltextWith Fulltext-
crisitem.author.deptNationalCentre for Carbon Capture and Storage (NCCCS) –The University of Nottingham, University Park, Nottingham, NG7 2RD, United Kingdom-
crisitem.author.deptIstituto Nazionale di Geofisica e Vulcanologia (INGV), Sezione Roma1, Roma, Italia-
crisitem.author.deptCNR-Institute of Geosciences and Earth Resources-
crisitem.author.deptIstituto Nazionale di Geofisica e Vulcanologia (INGV), Sezione Roma1, Roma, Italia-
crisitem.author.deptEarth Science Dept., University of Florence, Via La Pira 4, Florence, 50121, Italy; (3) CNR - IGG, Via La Pira 4, Florence, 50121, Italy-
crisitem.author.orcid0000-0002-3319-4257-
crisitem.author.orcid0000-0002-1705-7279-
crisitem.author.orcid0000-0002-8995-3312-
crisitem.author.orcid0000-0002-2006-6117-
crisitem.author.orcid0000-0002-1062-2757-
crisitem.author.orcid0000-0002-7822-1394-
crisitem.author.parentorgIstituto Nazionale di Geofisica e Vulcanologia-
crisitem.author.parentorgIstituto Nazionale di Geofisica e Vulcanologia-
crisitem.classification.parent04. Solid Earth-
crisitem.department.parentorgIstituto Nazionale di Geofisica e Vulcanologia-
crisitem.department.parentorgIstituto Nazionale di Geofisica e Vulcanologia-
crisitem.department.parentorgIstituto Nazionale di Geofisica e Vulcanologia-
Appears in Collections:Article published / in press
Files in This Item:
File Description SizeFormat Existing users please Login
Panarea Text corrected final.doc172.5 kBMicrosoft Word
Show simple item record

WEB OF SCIENCETM
Citations 50

34
checked on Feb 10, 2021

Page view(s) 50

249
checked on Apr 17, 2024

Download(s)

15
checked on Apr 17, 2024

Google ScholarTM

Check

Altmetric